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antifungal/obesity

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Phosphodiesterase-4B as a Therapeutic Target for Cognitive Impairment and Obesity-Related Metabolic Diseases.

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People in modern, affluent societies are living longer but also becoming increasingly overweight. With increased life expectancy comes increased risk of developing age-related cognitive decline and neurodegenerative diseases, such that an increasing proportion of life may be lived with cognitive

Chronic l-menthol-induced browning of white adipose tissue hypothesis: A putative therapeutic regime for combating obesity and improving metabolic health.

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BACKGROUND Obesity constitutes a serious global health concern reaching pandemic prevalence rates. The existence of functional brown adipose tissue (BAT) in adult humans has provoked intense research interest in the role of this metabolically active tissue in whole-body energy balance and body

Therapeutic potential of panduratin A, LKB1-dependent AMP-activated protein kinase stimulator, with activation of PPARα/δ for the treatment of obesity.

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OBJECTIVE AMP-activated protein kinase (AMPK) activators have shown potential as therapeutic agents for metabolic disorders. This study was conducted to evaluate therapeutic potential of panduratin (PAN) A, a natural AMPK stimulator, with activation of PPARα/δ for the treatment of

Cannabinoid 1 G protein-coupled receptor (periphero-)neutral antagonists: emerging therapeutics for treating obesity-driven metabolic disease and reducing cardiovascular risk.

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BACKGROUND Obesity and related cardiometabolic derangements are spiraling global health problems urgently in need of safe, effective and durable pharmacotherapy. METHODS As an orexigenic and anabolic biosignaling network, the endocannabinoid system interacts with other information-transducing

The endocannabinoid system and rimonabant: a new drug with a novel mechanism of action involving cannabinoid CB1 receptor antagonism--or inverse agonism--as potential obesity treatment and other therapeutic use.

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There is considerable evidence that the endocannabinoid (endogenous cannabinoid) system plays a significant role in appetitive drive and associated behaviours. It is therefore reasonable to hypothesize that the attenuation of the activity of this system would have therapeutic benefit in treating

Prospective therapeutic agents for obesity: molecular modification approaches of centrally and peripherally acting selective cannabinoid 1 receptor antagonists.

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Presently, obesity is one of the major health problems in the developed as well as developing countries due to lack of physical work and increasing sedentary life style. Endocannabinoid system (ECS) and especially cannabinoid 1 (CB1) receptor play a key role in energy homeostasis. Food intake and

The therapeutic potential of somatostatin receptor ligands in the treatment of obesity and diabetes.

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Since the development of synthetic somatostatin analogues, several therapeutic applications for somatostatin receptor agonist molecules have been defined. Established applications for somatostatin analogue treatment include pituitary tumours (growth hormone and thyrotropin-secreting adenomas),

Therapeutic potential for thyroid hormone receptor-beta selective agonists for treating obesity, hyperlipidemia and diabetes.

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Obesity and metabolic syndrome are increasing dramatically worldwide, contributing to cardiovascular morbidity and mortality. There are currently few safe and efficacious therapeutics for obesity and most strategies are focused on appetite suppression. Thyroid hormones reduce adiposity via increased

Regulation of appetite, satiation, and body weight by enteroendocrine cells. Part 2: therapeutic potential of enteroendocrine cells in the treatment of obesity.

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Obesity is an epidemic and medical issue. Investigating the pathways regulating appetite, food intake, and body weight is crucial to find strategies for the prevention and treatment of obesity. In the context of therapeutic strategies, we focus here on the potential of enteroendocrine cells (EECs)

Therapeutic approach of histamine H3 receptors in obesity.

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Obesity is considered one of the risk factors for metabolic disorders. There is increasing evidence that obesity is under control of several cytokines and hormone in the brain. Brain histamine and H3 receptors are important factors for regulating obesity. The results of physiological and

Therapeutic Enoxaparin in the Morbidly Obese Patient: A Case Report and Review of the Literature.

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Enoxaparin is a low molecular weight heparin commonly used in the treatment of venous thromboembolisms (VTEs); however, evidence on optimal empiric dosing recommendations are lacking in patients with morbid obesity. Utilization of an absolute dose cap, anti-Xa monitoring, and reduced empiric dosing

Unfractionated heparin dosing for therapeutic anticoagulation in critically ill obese adults.

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OBJECTIVE Research evaluating unfractionated heparin (UFH) dosing in obese critically ill populations is limited. This study aimed to determine optimal weight-based and total therapeutic infusion rates of UFH in this population. METHODS This retrospective cohort study compared adults on UFH

Safety and efficacy of the use of institutional unfractionated heparin protocols for therapeutic anticoagulation in obese patients: a retrospective chart review.

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Obesity is an independent risk factor for venous thromboembolism and ischemic heart disease. Optimal dosing strategies for heparin in obese patients are limited, as this population is mostly underrepresented in clinical trials. We evaluated the therapeutic efficacy and safety of unfractionated

Stratifying Therapeutic Enoxaparin Dose in Morbidly Obese Patients by BMI Class: A Retrospective Cohort Study.

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BACKGROUND
Enoxaparin is a low-molecular weight heparin (LMWH) commonly used for treatment of venous thromboembolism and acute coronary syndromes. The recommended dose for these conditions is weight-based (1 mg/kg) and doesn't require dose-capping. However, previous studies have

Classification of Therapeutic and Experimental Drugs for Brown Adipose Tissue Activation: Potential Treatment Strategies for Diabetes and Obesity.

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OBJECTIVE Increasing efforts are being made towards pharmacologic activation of brown adipose tissue (BAT) in animals and humans for potential use in the treatment of obesity and diabetes. We and others have reported a number of animal studies using either experimental or therapeutic drugs. There
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